Chinese Journal of Quantum Electronics, Volume. 42, Issue 4, 556(2025)

Corona discharge signal measurement based on Rydberg atoms

YUAN Hao1,2, LUO Bing3、*, CHEN Jianjun1,2, CHEN Zhen1,2, YANG Wenguang1,2, ZHANG Hao1,2、**, ZHANG Linjie1,2, and ZHANG Haofeng3
Author Affiliations
  • 1State Key Laboratory of Quantum Optics Technologies and Devices, Institute of Laser Spectroscopy,Shanxi University, Taiyuan 030006, China
  • 2Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan 030006, China
  • 3Electric Power Research Institute, China Southern Power Grid, Guangzhou 510663, China
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    References(23)

    [1] Eigner A, Rethmeier K. An overview on the current status of partial discharge measurements on AC high voltage cable accessories[J]. IEEE Electrical Insulation Magazine, 32, 48-55(2016).

    [2] Sun J H, Pan S Y, Deng J Z. Research status of partial discharge detection of power transformer based on pulse current method[J]. Journal of Physics: Conference Series, 2195, 012024(2022).

    [3] Vaillancourt G H, Dechamplain A, Malewski R A. Simultaneous measurement of partial discharge and radio-interference voltage[J]. IEEE Transactions on Instrumentation and Measurement, 49-52(1982).

    [4] Yuan Y, Lu G J, Wang W et al. Dielectric loss and partial discharge test analysis of 10 kV XLPE cable[C](2013).

    [5] Tenbohlen S, Denissov D, Hoek S M et al. Partial discharge measurement in the ultra high frequency (UHF) range[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 15, 1544-1552(2008).

    [6] Li Y Q, Lu F C, Xie H L et al. Study on ultrasonic generation mechanism of partial discharge[C](2005).

    [7] Li Z R, Zhou K, Xu X D et al. A thermal excitation based partial discharge detection method for cable accessory[J]. IEEE Transactions on Power Delivery, 38, 2703-2710(2023).

    [8] Yan J M, Liao R J, Yang L J et al. Product analysis of partial discharge damage to oil-impregnated insulation paper[J]. Applied Surface Science, 257, 5863-5870(2011).

    [9] Fleischhauer M, Imamoglu A, Marangos J P. Electromagnetically induced transparency: Optics in coherent media[J]. Reviews of Modern Physics, 77, 633-673(2005).

    [10] Boller K, Imamolu A, Harris S E. Observation of electromagnetically induced transparency[J]. Physical Review Letters, 66, 2593-2596(1991).

    [11] Adams C S, Pritchard J D, Shaffer J P. Rydberg atom quantum technologies[J]. Journal of Physics B: Atomic, Molecular and Optical Physics, 53, 012002(2019).

    [12] Anderson D A, Sapiro R E, Raithel G. A self-calibrated SI-traceable Rydberg atom-based radio frequency electric field probe and measurement instrument[J]. IEEE Transactions on Antennas and Propagation, 69, 5931-5941(2021).

    [13] Anderson D A, Miller S A, Raithel G et al. Optical measurements of strong microwave fields with Rydberg atoms in a vapor cell[J]. Physical Review Applied, 5, 034003(2016).

    [14] Dietsche E K, Larrouy A, Haroche S et al. High-sensitivity magnetometry with a single atom in a superposition of two circular Rydberg states[J]. Nature Physics, 15, 326-329(2019).

    [15] Affolderbach C, Du G X, Bandi T et al. Imaging microwave and DC magnetic fields in a vapor-cell Rb atomic clock[J]. IEEE Transactions on Instrumentation and Measurement, 64, 3629-3637(2015).

    [16] Yang W G, Jing M Y, Zhang H et al. Radio frequency electric field-enhanced sensing based on the Rydberg atom-based superheterodyne receiver[J]. Optics Letters, 49, 2938-2941(2024).

    [17] Xiao W, Liu X Y, Wu T et al. Radio-frequency magnetometry based on parametric resonances[J]. Physical Review Letters, 133, 093201(2024).

    [18] Shahsavarian T, Pan Y, Zhang Z S et al. A review of knowledge-based defect identification via PRPD patterns in high voltage apparatus[J]. IEEE Access, 9, 77705-77728(2021).

    [19] Rahimi M R, Javadinezhad R, Vakilian M. DC partial discharge characteristics for corona, surface and void discharges[C](2015).

    [20] Raymond W J K, Illias H A, Abu Bakar A H et al. Partial discharge classifications: Review of recent progress[J]. Measurement, 68, 164-181(2015).

    [21] O'Sullivan M S, Stoicheff B P. Scalar and tensor polarizabilities of 2D Rydberg states in Rb[J]. Physical Review A, 33, 1640-1645(1986).

    [22] Black E D. An introduction to Pound-Drever-Hall laser frequency stabilization[J]. American Journal of Physics, 69, 79-87(2001).

    [23] Idjadi M H, Aflatouni F. Integrated Pound-Drever-Hall laser stabilization system in silicon[J]. Nature Communications, 8, 1209(2017).

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    Hao YUAN, Bing LUO, Jianjun CHEN, Zhen CHEN, Wenguang YANG, Hao ZHANG, Linjie ZHANG, Haofeng ZHANG. Corona discharge signal measurement based on Rydberg atoms[J]. Chinese Journal of Quantum Electronics, 2025, 42(4): 556

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    Paper Information

    Category: Special Issue on...

    Received: Dec. 12, 2024

    Accepted: --

    Published Online: Jul. 31, 2025

    The Author Email: Bing LUO (luobing@csg.cn), Hao ZHANG (haozhang@sxu.edu.cn)

    DOI:10.3969/j.issn.1007-5461.2025.04.011

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